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Kodding, J
Walker, G
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Coulton, JW
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Citation: Ad. Ferguson et al., Active transport of an antibiotic rifamycin derivative by the outer-membrane protein FhuA, STRUCTURE, 9(8), 2001, pp. 707-716
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Breed, J
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Citation: J. Breed et al., Purification, crystallization and preliminary crystallographic analysis ofthe periplasmic binding protein ProX from Escherichia coli, ACT CRYST D, 57, 2001, pp. 448-450
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Diez, J
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Citation: J. Diez et al., The crystal structure of a liganded trehalose/maltose-binding protein fromthe hyperthermophilic Archaeon Thermococcus litoralis at 1.85 angstrom, J MOL BIOL, 305(4), 2001, pp. 905-915
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Fritz, G
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Citation: S. Umhau et al., Three-dimensional structure of the nonaheme cytochrome c from Desulfovibrio desulfuricans Essex in the Fe(III) state at 1.89 angstrom resolution, BIOCHEM, 40(5), 2001, pp. 1308-1316
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Zeth, K
Diederichs, K
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Engelhardt, H
Citation: K. Zeth et al., Crystal structure of Omp32, the anion-selective porin from Comamonas acidovorans, in complex with a periplasmic peptide at 2.1 angstrom resolution, STRUCT F D, 8(9), 2000, pp. 981-992
Authors:
Ferguson, AD
Welte, W
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Lindner, B
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Citation: Ad. Ferguson et al., A conserved structural motif for lipopolysaccharide recognition by procaryotic and eucaryotic proteins, STRUCT F D, 8(6), 2000, pp. 585-592
Authors:
Ferguson, AD
Braun, V
Fiedler, HP
Coulton, JW
Diederichs, K
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Citation: Ad. Ferguson et al., Crystal structure of the antibiotic albomycin in complex with the outer membrane transporter FhuA, PROTEIN SCI, 9(5), 2000, pp. 956-963
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Diederichs, K
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Citation: K. Diederichs et al., Crystal structure of MalK, the ATPase subunit of the trehalose/maltose ABCtransporter of the archaeon Thermococcus litoralis, EMBO J, 19(22), 2000, pp. 5951-5961
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Leder, L
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Citation: J. Freigang et al., The crystal structure of the ligand binding module of axonin-1/TAG-1 suggests a zipper mechanism for neural cell adhesion, CELL, 101(4), 2000, pp. 425-433
Authors:
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Citation: S. Umhau et al., The x-ray structure of D-amino acid oxidase at very high resolution identifies the chemical mechanism of flavin-dependent substrate dehydrogenation, P NAS US, 97(23), 2000, pp. 12463-12468
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Zeth, K
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Citation: M. Dolder et al., Crystallization of the human, mitochondrial voltage-dependent anion-selective channel in the presence of phospholipids, J STRUCT B, 127(1), 1999, pp. 64-71
Authors:
Ritter, S
Hiller, RG
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Citation: S. Ritter et al., Crystal structure of a phycourobilin-containing phycoerythrin at 1.90-angstrom resolution, J STRUCT B, 126(2), 1999, pp. 86-97
Authors:
Ulmke, C
Kreth, J
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Citation: C. Ulmke et al., Site-directed mutagenesis of loop L3 of sucrose porin ScrY leads to changes in substrate selectivity, J BACT, 181(6), 1999, pp. 1920-1923
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Seth, O
Smau, L
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Citation: O. Seth et al., Cofactor- and substrate-binding domains in flavin-dependent N-hydroxylating enzymes - Reply, TRENDS BIOC, 23(11), 1998, pp. 414-415
Authors:
Hars, U
Horlacher, R
Boos, W
Welte, W
Diederichs, K
Citation: U. Hars et al., Crystal structure of the effector-binding domain of the trehalose-repressor of Escherichia coli, a member of the LacI family, in its complexes with inducer trekalose-6-phosphate and noninducer trehalose, PROTEIN SCI, 7(12), 1998, pp. 2511-2521
Authors:
Ferguson, AD
Hofmann, E
Coulton, JW
Diederichs, K
Welte, W
Citation: Ad. Ferguson et al., Siderophore-mediated iron transport: Crystal structure of FhuA with bound lipopolysaccharide, SCIENCE, 282(5397), 1998, pp. 2215-2220